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Updated: Oct 3, 2026

The Mammalian Ocular Lens in Focus: Development, Anatomy, Physiology, Transparency, Biomechanics, and Age-Related Challenges
Published on: May 29, 2026
Fgf receptor signaling plays a role in lens induction
S C Faber1, P Dimanlig, H P Makarenkova
1Skirball Institute for Biomolecular Medicine, Developmental Genetics Program, Cell Biology Department, New York University Medical Center, 540 First Avenue, New York, NY 10016, USA.
Abstract:
We describe experiments showing that fibroblast growth factor receptor (Fgfr) signaling plays a role in lens induction. Three distinct experimental strategies were used: (1) using small-molecule inhibitors of Fgfr kinase activity, we showed that both the transcription level and protein expression of Pax6, a transcription factor critical for lens development, was diminished in the presumptive lens ectoderm; (2) transgenic mice (designated Tfr7) that expressed a dominant-negative Fgf receptor exclusively in the presumptive lens ectoderm showed defects in formation of the lens placode at E9.5 but in addition, showed reduced levels of expression for Pax6, Sox2 and Foxe3, all markers of lens induction; (3) by performing crosses between Tfr7 transgenic and Bmp7-null mice, we showed that there is a genetic interaction between Fgfr and Bmp7 signaling at the induction phases of lens development. This manifested as exacerbated lens development defects and lower levels of Pax6 and Foxe3 expression in Tfr7/Tfr7, Bmp7(+/-) mice when compared with Tfr7/Tfr7 mice alone. As Bmp7 is an established lens induction signal, this provides further evidence that Fgfr activity is important for lens induction. This analysis establishes a role for Fgfr signaling in lens induction and defines a genetic pathway in which Fgfr and Bmp7 signaling converge on Pax6 expression in the lens placode with the Foxe3 and Sox2 genes lying downstream.
Insights
Fibroblast growth factor receptor (Fgfr) signaling is crucial for lens induction. Fgfr signaling interacts with Bone morphogenetic protein 7 (Bmp7) signaling, converging on Pax6 expression for lens development.
Area of Science:
- Developmental Biology
- Molecular Biology
- Genetics
Background:
- Lens induction is a critical early step in eye development.
- Fibroblast growth factor receptor (Fgfr) signaling is implicated in various developmental processes.
Purpose of the Study:
- To investigate the role of Fgfr signaling in lens induction.
- To elucidate the genetic interactions between Fgfr and other signaling pathways during lens development.
Main Methods:
- Inhibition of Fgfr kinase activity using small molecules.
- Generation of transgenic mice with dominant-negative Fgf receptor expression.
- Genetic crosses between Fgfr transgenic and Bmp7-null mice.
Main Results:
- Fgfr inhibition reduced Pax6 transcription and protein levels.
- Transgenic mice exhibited lens placode formation defects and reduced expression of lens markers (Pax6, Sox2, Foxe3).
- Genetic interaction between Fgfr and Bmp7 signaling exacerbated developmental defects and reduced Pax6/Foxe3 expression.
Conclusions:
- Fgfr signaling is essential for lens induction.
- Fgfr and Bmp7 signaling pathways converge on Pax6 expression.
- Foxe3 and Sox2 act downstream of this convergence in lens placode development.
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